We have studied the incommensurate moiré structure of epitaxial graphene grown on iridium(111) by dynamic low-energy electron diffraction [LEED I(V)] and noncontact atomic force microscopy (AFM) with a CO-terminated tip. Our LEED I(V) results yield the average positions of all the atoms in the surface unit cell and are in qualitative agreement with the structure obtained from density functional theory. The AFM experiments reveal local variations of the moiré structure: The corrugation varies smoothly over several moiré unit cells between 42 and 56 pm. We attribute these variations to the varying registry between the moiré symmetry sites and the underlying substrate. We also observe isolated outliers, where the moiré top sites can be offset ...
Ultrathin films of iron oxide form a two-dimensional (2D) FeO layer on Ir(111). Because of differenc...
The electronic and crystallographic structure of the graphene/Rh(111) moiré lattice is studied via c...
In the last years, graphene has become one of the most studied materials due to its peculiar electro...
We have studied the incommensurate moiré structure of epitaxial graphene grown on iridium(111) by dy...
\u3cp\u3eWe have studied the incommensurate moiré structure of epitaxial graphene grown on iridium(1...
Epitaxial graphene grown on transition-metal surfaces typically exhibits a moiré pattern due to the ...
Epitaxial graphene grown on transition-metal surfaces typically exhibits a moir´e pattern due to the...
Abstract. The graphene moire ́ structures on metals, as they demonstrate both long (moiré) and shor...
International audienceThe structure of a graphene monolayer on Ir(111) has been investigated {\it in...
Oral presentation given at the European Conference on Surface Crystallography and Dynamics (ECSCD-12...
Realization of graphene moiré superstructures on the surface of 4d and 5d transition metals offers t...
Topographic scanning tunneling microscopy (STM) images of epitaxial single layer graphene on the Rh(...
4siMoiré superstructures are common for epitaxial graphene on transition metal surfaces and can stro...
We investigate the fine structure of graphene on iridium, which is a model for graphene weakly inter...
We show that noncontact atomic force microscopy (AFM) is sensitive to the local stiffness in the ato...
Ultrathin films of iron oxide form a two-dimensional (2D) FeO layer on Ir(111). Because of differenc...
The electronic and crystallographic structure of the graphene/Rh(111) moiré lattice is studied via c...
In the last years, graphene has become one of the most studied materials due to its peculiar electro...
We have studied the incommensurate moiré structure of epitaxial graphene grown on iridium(111) by dy...
\u3cp\u3eWe have studied the incommensurate moiré structure of epitaxial graphene grown on iridium(1...
Epitaxial graphene grown on transition-metal surfaces typically exhibits a moiré pattern due to the ...
Epitaxial graphene grown on transition-metal surfaces typically exhibits a moir´e pattern due to the...
Abstract. The graphene moire ́ structures on metals, as they demonstrate both long (moiré) and shor...
International audienceThe structure of a graphene monolayer on Ir(111) has been investigated {\it in...
Oral presentation given at the European Conference on Surface Crystallography and Dynamics (ECSCD-12...
Realization of graphene moiré superstructures on the surface of 4d and 5d transition metals offers t...
Topographic scanning tunneling microscopy (STM) images of epitaxial single layer graphene on the Rh(...
4siMoiré superstructures are common for epitaxial graphene on transition metal surfaces and can stro...
We investigate the fine structure of graphene on iridium, which is a model for graphene weakly inter...
We show that noncontact atomic force microscopy (AFM) is sensitive to the local stiffness in the ato...
Ultrathin films of iron oxide form a two-dimensional (2D) FeO layer on Ir(111). Because of differenc...
The electronic and crystallographic structure of the graphene/Rh(111) moiré lattice is studied via c...
In the last years, graphene has become one of the most studied materials due to its peculiar electro...